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玉米转座因子Ds的亚末端位点在切除中的作用。

The role of subterminal sites of transposable element Ds of Zea mays in excision.

作者信息

Chatterjee S, Starlinger P

机构信息

Institut für Genetik, Universität zu Köln, Germany.

出版信息

Mol Gen Genet. 1995 Nov 27;249(3):281-8. doi: 10.1007/BF00290528.

Abstract

Transposition depends on DNA sequences located at or near the termini of the transposon. In the maize transposable element Ds, these sequences were studied by site-directed mutagenesis followed by a transient excision assay in Petunia protoplasts. The transposase-binding AAACGG motifs found in large numbers in the element are important, but none of them is in itself indispensable, for excision. However, mutation of an isolated motif at the 3' end considerably reduced excisability. The inverted termini were confirmed to be indispensable. Point mutations in regions outside the inverted termini of Ds and not located in the transposase-binding motifs had, in some cases, a pronounced effect on excision frequency. The implications of these findings are discussed.

摘要

转座依赖于位于转座子末端或其附近的DNA序列。在玉米转座元件Ds中,通过定点诱变,随后在矮牵牛原生质体中进行瞬时切除试验,对这些序列进行了研究。在该元件中大量发现的转座酶结合基序AAACGG很重要,但对于切除而言,它们中没有一个本身是不可或缺的。然而,3'端一个孤立基序的突变显著降低了可切除性。反向末端被证实是不可或缺的。Ds反向末端之外且不在转座酶结合基序中的区域发生的点突变,在某些情况下,对切除频率有显著影响。讨论了这些发现的意义。

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